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通过插入短节段神经移植物增强硅胶管导管内的神经再生。

Enhancing nerve regeneration across a silicone tube conduit by using interposed short-segment nerve grafts.

作者信息

Francel P C, Francel T J, Mackinnon S E, Hertl C

机构信息

Department of Neurological Surgery, University of Oklahoma Health Sciences Center/University Presbyterian Neurological Institute, Oklahoma City, USA.

出版信息

J Neurosurg. 1997 Dec;87(6):887-92. doi: 10.3171/jns.1997.87.6.0887.

Abstract

Isolated nerve segments may inherently contain all of the necessary factors required to support regeneration within a silicone tube conduit placed across a nerve gap. Thirty-six adult Lewis rats each weighing approximately 250 g were randomized into three groups. A sciatic nerve gap (13-15 mm in length) was bridged by an empty silicone tube (Group I), a silicone tube containing a short 2-mm interposed nerve segment (Group II), or a nerve autograft (Group III). At 16 weeks postoperatively, no regeneration was observed through the empty silicone tube. In contrast, regeneration across the silicone tube containing the isolated nerve segment was equivalent to that noted through nerve autografts as assessed by histological, electrophysiological, and functional criteria. Thus, an interposed nerve segment will extend the length of successful nerve regeneration through a silicone tube conduit.

摘要

孤立的神经节段可能本身就包含了支持在跨越神经间隙放置的硅胶管导管内进行再生所需的所有必要因素。36只成年Lewis大鼠,每只体重约250克,被随机分为三组。用空硅胶管(第一组)、含有2毫米短插入神经节段的硅胶管(第二组)或自体神经移植(第三组)来桥接坐骨神经间隙(长度为13 - 15毫米)。术后16周,通过空硅胶管未观察到再生。相比之下,根据组织学、电生理学和功能标准评估,通过含有孤立神经节段的硅胶管的再生与通过自体神经移植的再生相当。因此,一个插入的神经节段将延长通过硅胶管导管成功进行神经再生的长度。

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